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    • 2. 发明授权
    • Ophthalmic lens storage container
    • 眼镜容器
    • US07441650B2
    • 2008-10-28
    • US11019089
    • 2004-12-21
    • Masayoshi TanakaSeiichi IchikawaHiroyuki Oyama
    • Masayoshi TanakaSeiichi IchikawaHiroyuki Oyama
    • A45C11/04
    • B65D77/2036B65D77/2032B65D2585/545
    • To provide an ophthalmic lens container of novel structure, whereby without the use of any special utensil, a liquid such as a preserving solution can be drained, while keeping an ophthalmic lens held in the container.An ophthalmic lens container 210 includes a container body 212, wherein a cavity 224 has an opening inside face 228 of generally heart shape in a plane view. A constricted lower end of the lower section of the heart shape in the opening inside face has a circumferential radius of curvature: ra is smaller than a radius of curvature of a front face of the ophthalmic lens, and the two side portions of the heart shape in the opening inside surface 228 of the cavity 224 have the radius of curvature in the circumferential direction greater than the radius of curvature of the front face of the ophthalmic lens; while a diameter dimension of an inscribed circle in the opening of the cavity is greater than the outside diameter dimension of the ophthalmic lens.
    • 为了提供一种具有新颖结构的眼用透镜容器,由此在不使用任何特殊器具的情况下,可以将保持在容器中的眼镜片保持在一起,从而排出诸如保存溶液的液体。 眼用透镜容器210包括容器主体212,其中空腔224在平面图中具有大致心形形状的开口内表面228。 开口内侧面的心形的下部的收缩下端具有周向的曲率半径:ra小于眼镜片的正面的曲率半径,心形的两个侧面部 在空腔224的开口内表面228中,圆周方向的曲率半径大于眼镜片正面的曲率半径; 而腔的开口中的内接圆的直径尺寸大于眼镜片的外径尺寸。
    • 3. 发明授权
    • Holding device for cutting an ophthalmic lens
    • 用于切割眼镜的保持装置
    • US5520078A
    • 1996-05-28
    • US255974
    • 1994-06-08
    • Kenshiro HattoriHiroyuki Oyama
    • Kenshiro HattoriHiroyuki Oyama
    • B23B5/36B23B31/02B23B31/20B23B31/34B23B31/36B24B13/005G02C7/04B23B31/00B23B5/22
    • B24B13/005Y10T279/13Y10T82/152Y10T82/26
    • A holding device for cutting an ophthalmic lens includes a holding member which has a spherical sliding surface. A support member is provided with a spherical receiving surface which slidably supports the spherical sliding surface of the holding member. In addition, a fixing assembly is provided for adjustably positioning the lens holding member with respect to the support member. The fixing assembly includes a guide member which is rotatable about a support center axis, with the guide member including an eccentric guide hole, such that pins disposed between the guide hole and an extension of the lens holding member move (or adjust the position of) the lens holding member in response to rotation of the guide member. Rotation of the guide member thus results in sliding movement of the lens holding member with respect to the support member to thereby position the holding member with respect to the support member. A jig can be associated with the lens holding member, with the jig including a spherical surface having a spherical center which coincides with the spherical center of the spherical sliding surface of the lens holding member.
    • 用于切割眼镜片的保持装置包括具有球形滑动表面的保持构件。 支撑构件设置有可滑动地支撑保持构件的球形滑动表面的球形接收表面。 此外,提供了一种固定组件,用于可调节地将透镜保持构件相对于支撑构件定位。 固定组件包括能够围绕支撑中心轴线旋转的引导构件,引导构件包括偏心引导孔,使得设置在引导孔和透镜保持构件的延伸部之间的销移动(或调整位置) 透镜保持构件响应于引导构件的旋转。 因此,引导构件的旋转导致透镜保持构件相对于支撑构件的滑动移动,从而相对于支撑构件定位保持构件。 夹具可以与透镜保持构件相关联,其中夹具包括具有与透镜保持构件的球形滑动表面的球形中心重合的球面中心的球面。
    • 6. 发明申请
    • Ophthalmic lens storage container
    • 眼镜容器
    • US20050218012A1
    • 2005-10-06
    • US11019089
    • 2004-12-21
    • Masayoshi TanakaSeiichi IchikawaHiroyuki Oyama
    • Masayoshi TanakaSeiichi IchikawaHiroyuki Oyama
    • A45C11/04B65D75/36B65D77/20B65D81/24
    • B65D77/2036B65D77/2032B65D2585/545
    • To provide an ophthalmic lens container of novel structure, whereby without the use of any special utensil, a liquid such as a preserving solution can be drained, while keeping an ophthalmic lens held in the container. An ophthalmic lens container 210 includes a container body 212, wherein a cavity 224 has an opening inside face 228 of generally heart shape in a plane view. A constricted lower end of the lower section of the heart shape in the opening inside face has a circumferential radius of curvature: ra is smaller than a radius of curvature of a front face of the ophthalmic lens, and the two side portions of the heart shape in the opening inside surface 228 of the cavity 224 have the radius of curvature in the circumferential direction greater than the radius of curvature of the front face of the ophthalmic lens; while a diameter dimension of an inscribed circle in the opening of the cavity is greater than the outside diameter dimension of the ophthalmic lens.
    • 为了提供一种具有新颖结构的眼用透镜容器,由此在不使用任何特殊器具的情况下,可以将保持在容器中的眼镜片保持在一起,从而排出诸如保存溶液的液体。 眼用透镜容器210包括容器主体212,其中空腔224在平面图中具有大致心形形状的开口内表面228。 开口内侧面的心形的下部的收缩下端具有周向的曲率半径:ra小于眼镜片的正面的曲率半径,心形的两个侧面部 在空腔224的开口内表面228中,圆周方向的曲率半径大于眼镜片正面的曲率半径; 而腔的开口中的内接圆的直径尺寸大于眼镜片的外径尺寸。
    • 7. 发明授权
    • Multifocal ocular lens including intermediate vision correction region between near and distant vision correction regions
    • 多焦点眼镜包括近距离和远距视力矫正区域之间的中间视力矫正区域
    • US06286956B1
    • 2001-09-11
    • US09419696
    • 1999-10-14
    • Hiroyuki OyamaTadashi SawanoKazuya MiyamuraAsaki SuzakiYukihisa Sakai
    • Hiroyuki OyamaTadashi SawanoKazuya MiyamuraAsaki SuzakiYukihisa Sakai
    • G02C704
    • G02C7/044G02C7/042G02C7/043G02C2202/04
    • Multifocal ocular lens including a central vision correction region having a first optical power value, an outer vision correction region spaced radially outwardly from the central vision correction region and having a second optical power value different from the first optical power value, and an intermediate vision correction region located radially intermediate between the central and outer vision correction regions and having a distribution of optical power between the first and second optical power values, and wherein the intermediate region has a first transition point and a second transition point which is not radially inwardly spaced from the first transition point, such that the distribution of the optical power of the intermediate region includes two optical power values which are defined by the first and second transition points, respectively, and which are determined such that the optical power value defined by the second transition point is closer to the first optical power value of the central region than the optical power value defined by the first transition point.
    • 包括具有第一光学功率值的中心视觉校正区域,与中心视觉校正区域径向向外间隔并具有与第一光学功率值不同的第二光学功率值的外部视觉校正区域的多焦点眼镜片,以及中间视力校正 位于中心和外视觉矫正区域之间径向中间的区域,并且具有在第一和第二光学功率值之间的光焦度分布,并且其中中间区域具有第一转变点和第二转变点,其不径向向内 第一转变点,使得中间区域的光功率的分布分别包括由第一和第二转变点限定的两个光功率值,并且被确定为使得由第二转变定义的光功率值 点更靠近第一光电 r值比由第一转变点定义的光功率值。
    • 9. 发明授权
    • Prism ballast type contact lens, method of producing the same, and mold
assembly used in producing the lens
    • Prism镇流器型隐形眼镜及其制造方法以及用于制造镜片的模具组件
    • US06158861A
    • 2000-12-12
    • US259766
    • 1999-03-01
    • Hiroyuki OyamaYuuzi Gotou
    • Hiroyuki OyamaYuuzi Gotou
    • B29C39/02B29D11/00G02C7/04G02C7/06
    • G02C7/04B29D11/00038G02C7/048
    • A prism ballast type contact lens having a front and a back surface, a center axis of the front surface being offset from that of the back surface which is a geometric center axis of the lens, such that the lens has a thickness which continuously increases in a downward direction of the lens, the lens further having a slab-off area provided in at least a lower portion of the front surface, wherein at least an optical portion of the back surface and the lower portion of the front surface are formed by molding using a mold assembly including a male and a female mold half which are closed to define a mold cavity that gives a lens blank which is formed into the prism ballast type contact lens, the male mold half having a convex molding surface whose profile follows that of the optical portion of the back surface, the female mold half having a concave molding surface whose profile follows that of at least the lower portion of the front surface, the mold cavity being defined by the convex and concave molding surfaces, so as to provide the lens blank having a thickness sufficient to give at least an optical portion of the front surface by cutting.
    • 具有前表面和后表面的棱镜镇流器型隐形眼镜,前表面的中心轴线与作为透镜的几何中心轴线的背面的中心轴线偏离,使得透镜具有连续增加的厚度 所述透镜的向下方向,所述透镜还具有设置在所述前表面的至少下部的切断区域,其中所述后表面的至少一个光学部分和所述前表面的下部通过模制而形成 使用包括阳模和阴半模的模具组件,所述模具组合件封闭以限定形成为棱镜压载型隐形眼镜的镜片坯料的模腔,所述阳半模具有凸形的模制表面,其形状遵循 后表面的光学部分,阴半模具具有与前表面的至少下部的轮廓相似的凹模制表面,模腔由凸面定义 d凹形成型表面,以便提供具有足以通过切割至少给出前表面的光学部分的厚度的透镜毛坯。